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Fizika Tverdogo Tela, 2023 Volume 65, Issue 12, Page 2266 (Mi ftt10928)

Magnetism

Magnetic and Magnetocaloric Properties of Y(Co$_{1-x}$Fe$_x$)$_2$ ($x$ = 0.12–0.20) and Lu(Co$_{0.84}$Fe$_{0.16}$)$_2$ Compounds

M. S. Anikina, E. N. Tarasova, A. V. Zinina, N. V. Kudrevatykha, D. S. Neznakhina, M. A. Semkinab, M. I. Knyazeva, N. V. Seleznevaa, S. V. Andreeva

a Institute of Natural Sciences and Mathematics, Ural Federal University, Ekaterinburg, Russia
b Mikheev Institute of Metal Physics, Ural Branch, Russian Academy of Sciences, Ekaterinburg, Russia

Abstract: To clarify the nature of the anomalously high magnetocaloric effect at low temperatures in the $RMe_2$ Laves type phases with “non-magnetic” rare-earth ions ($R$ = Y or Lu) and 3d elements of the Fe group ($Me$ = Fe, Co), the Y(Co$_{1-x}$Fe$_x$)$_2$ ($x$ = 0.12–0.20) and Lu(Co$_{0.84}$Fe$_{0.16}$)$_2$ compositions have been synthesized and their magnetic and magnetocaloric properties were investigated (isothermal magnetic entropy change $\Delta S_m$ and adiabatic temperature change $\Delta T_{\mathrm{ad}}$). It has been established that the iron concentration increases and/or Y by Lu replacement with unchanged Co : Fe ratio gives rise in the energy of the $d$$d$ exchange interaction, which is followed by an increase in the Curie temperature value as well as by the low-temperature anomaly shift on the $\Delta S_m(T)$ dependence to a higher temperatures range.

Keywords: magnetocaloric effect, adiabatic temperature change, magnetic moments, Laves phase, Curie temperature, mictomagnetism.

Language: English



© Steklov Math. Inst. of RAS, 2025